论文标题

临近纳米线岛的全奇偶校验阶段图

Full parity phase diagram of a proximitized nanowire island

论文作者

Shen, J., Winkler, G. W., Borsoi, F., Heedt, S., Levajac, V., Wang, J. Y., van Driel, D., Bouman, D., Gazibegovic, S., Veld, R. L. M. Op Het, Car, D., Logan, J. A., Pendharkar, M., Palmstrom, C. J., Bakkers, E. P. A. M., Kouwenhoven, L. P., van Heck, B.

论文摘要

我们测量了混合INSB-AL岛的库仑阻滞电导振荡的电荷周期性,这是栅极电压和平行磁场的函数。周期性从$ 2E $变为$ 1E $,在磁场的门相关值$ b^*$的情况下,在增加门电压后从高限制下降到低限。在两个极限之间的栅极电压区域中,我们的数值模拟表明是定位Majorana零模式的最有希望的,我们观察到峰值间距和高度的相关振荡。对于正门电压,$ 2E $ -1E $ $ $ b^*$的过渡是由于存在非人性状态,其能量迅速由于磁场的轨道效应而迅速分散到充电能量以下。我们的测量结果表明,仔细探索邻近纳米线的整个可用相空间的重要性是定义未来拓扑量子的先决条件。

We measure the charge periodicity of Coulomb blockade conductance oscillations of a hybrid InSb-Al island as a function of gate voltage and parallel magnetic field. The periodicity changes from $2e$ to $1e$ at a gate-dependent value of the magnetic field, $B^*$, decreasing from a high to a low limit upon increasing the gate voltage. In the gate voltage region between the two limits, which our numerical simulations indicate to be the most promising for locating Majorana zero modes, we observe correlated oscillations of peak spacings and heights. For positive gate voltages, the $2e$-$1e$ transition with low $B^*$ is due to the presence of non-topological states whose energy quickly disperses below the charging energy due to the orbital effect of the magnetic field. Our measurements demonstrate the importance of a careful exploration of the entire available phase space of a proximitized nanowire as a prerequisite to define future topological qubits.

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